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首页> 外文期刊>Industry Applications, IEEE Transactions on >Fault-Tolerant Operation of DFIG-WT With Four-Switch Three-Phase Grid-Side Converter by Using Simplified SVPWM Technique and Compensation Schemes
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Fault-Tolerant Operation of DFIG-WT With Four-Switch Three-Phase Grid-Side Converter by Using Simplified SVPWM Technique and Compensation Schemes

机译:利用简化的SVPWM技术和补偿方案,具有四开关三相并网转换器的DFIG-WT的容错操作

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摘要

In this paper, in response to the open-circuit fault scenario in the grid-side converter (GSC) of doubly fed induction generator-based wind turbines (DFIG-WTs), a fault-tolerant four-switch three-phase (FSTP) topology-based GSC is studied. Compared with other switch-level fault-tolerant converter topologies, fewer switches, less switching and conduction losses, and simpler converter structure are derived. A simplified space vector pulse width modulation (SVPWM) technique is proposed to improve the output current quality and reduce the computational complexity in the control process. Unified expressions of duty ratios for the two remaining healthy bridge arms are obtained. In addition, the three-phase unbalance phenomenon caused by the capacitive impedance in the faulty phase is analyzed from the ac point of view, and a current distortion compensation scheme is illustrated. Furthermore, a dc-bus voltage deviation suppression strategy is proposed to maximize the dc-bus voltage utilization rate and mitigate the damage to the dc-link capacitors. Simulations are carried out in MATLAB/Simulink2017a to demonstrate the validity of the proposed SVPWM technique and compensation schemes in FSTP GSC for a 1.5-MW grid-connected DFIG-WT when different working conditions are considered.
机译:本文针对双馈感应式风力发电机(DFIG-WTs)的电网侧变流器(GSC)中的开路故障情况,采用了容错四开关三相(FSTP)研究了基于拓扑的GSC。与其他开关级容错转换器拓扑相比,可以得出更少的开关,更少的开关和传导损耗以及更简单的转换器结构。提出了一种简化的空间矢量脉宽调制(SVPWM)技术,以提高输出电流质量并降低控制过程中的计算复杂性。获得了其余两个健康桥臂的占空比的统一表达式。另外,从交流的角度分析了故障相中容性阻抗引起的三相不平衡现象,并说明了电流畸变补偿方案。此外,提出了直流母线电压偏差抑制策略,以最大化直流母线电压利用率并减轻对直流母线电容器的损害。在MATLAB / Simulink2017a中进行了仿真,以证明在考虑不同的工作条件时,针对1.5 MW并网DFIG-WT的FSTP GSC中提出的SVPWM技术和补偿方案的有效性。

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